Department of Hepatological Surgery, First Hospital of Shanxi Medical University, Taiyuan, China; Department of Anatomy, Shanxi Medical University, Taiyuan, China; Shanxi Key Laboratory of Birth Defect and Cell Regeneration, Shanxi Medical University, Taiyuan, China.
Department of Anatomy, Shanxi Medical University, Taiyuan, China.
Biochem Biophys Res Commun. 2022 Oct 30;627:45-51. doi: 10.1016/j.bbrc.2022.08.039. Epub 2022 Aug 17.
The benefits of autologous cell therapy for cardiac repair are diminished in aged individuals due to the limited quality and poor tolerance of aged stem cells in the ischemic micro-environment. The safe and efficient methods to improve the therapeutic effect of aged stem cells are needed to treat the increasing number of aged patients with cardiac diseases. In the present study, we aimed to determine whether hypoxic preconditioning can improve the therapeutic effect of aged stem cells even if the responsiveness of aged MSCs is poor, and to seek the underlying mechanism. Using a murine model of MI, our results showed that hypoxic preconditioning promoted the therapeutic effect of aged BMSCs, which was expressed in improved cardiac function, decreased scar size and alleviated cardiac remodeling in vivo. This in vivo effect of hypoxic preconditioned aged BMSCs was associated with alleviated inflammation, oxidative stress and apoptosis in infarcted heart. In vitro studies confirmed that hypoxic preconditioned aged BMSCs exert cytoprotective impacts on H9C2 cells against lethal hypoxia injury via attenuating oxidative stress and apoptosis. Our data support the promise of hypoxic preconditioning as a potential strategy to improve autologous stem cell therapy for ischemic heart injury in aged individuals.
由于缺血微环境中衰老干细胞的质量有限和耐受性差,自体细胞疗法对心脏修复的益处在老年人中减弱。需要安全有效的方法来提高老年干细胞的治疗效果,以治疗越来越多的患有心脏病的老年患者。在本研究中,我们旨在确定低氧预处理是否可以改善衰老干细胞的治疗效果,即使衰老 MSC 的反应性较差,并寻求潜在的机制。使用 MI 的小鼠模型,我们的结果表明,低氧预处理促进了衰老 BMSCs 的治疗效果,表现在改善心功能、减少疤痕大小和减轻体内心脏重构。低氧预处理的衰老 BMSCs 的这种体内作用与减轻梗死心脏的炎症、氧化应激和细胞凋亡有关。体外研究证实,低氧预处理的衰老 BMSCs 通过减轻氧化应激和细胞凋亡,对 H9C2 细胞产生细胞保护作用,使其免受致命的低氧损伤。我们的数据支持低氧预处理作为一种潜在策略的前景,以改善缺血性心脏损伤的自体干细胞治疗在老年人中。